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Three-Dimensional Imaging of Hepatic Sinusoids in Mice Using Synchrotron Radiation Micro-Computed Tomography

机译:同步辐射微计算机断层成像技术对小鼠肝脏正弦波的三维成像

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摘要

Hepatic sinusoid, the smallest vessel in the liver, plays important roles in hepatic microcirculation. Although the structure of the hepatic sinusoids affects diverse functions of the liver, little is known about morphological alterations in the sinusoids under pathological conditions. In this study, we show that the structure of hepatic sinusoids can be identified three-dimensionally in normal and carbon tetrachloride-injured mouse liver, using the absorption mode of synchrotron radiation micro-computed tomography. We observed that the hepatic sinusoidal structure on tomographic slice images was similar to that on histological images of normal and acutely injured mice. Moreover, centrilobular necrosis and structural alterations of the sinusoids in the necrotic region were detectable on tomographic slice and volume-rendered images of the acutely injured mice. Furthermore, quantitative analyses on 3D volume-rendered images of the injured sinusoid revealed decrease in the volume of the sinusoid and connectivity of the sinusoidal network. Our results suggest that the use of synchrotron radiation micro-computed tomography may improve our understanding of the pathogenesis of hepatic diseases by detecting the hepatic sinusoids and their alterations in three-dimensional structures of the damaged liver.
机译:肝窦,肝中最小的血管,在肝微循环中起重要作用。尽管肝正弦波的结构会影响肝脏的各种功能,但对于病理状态下正弦波的形态变化知之甚少。在这项研究中,我们表明,使用同步辐射微型计算机断层摄影的吸收模式,可以在正常和四氯化碳损伤的小鼠肝脏中三维识别肝正弦波的结构。我们观察到,断层扫描切片图像上的肝正弦结构与正常和急性损伤小鼠的组织学图像上的相似。此外,在急性损伤小鼠的断层扫描切片和体积渲染图像上可检测到小叶坏死和坏死区域正弦曲线的结构改变。此外,对受伤的正弦波的3D体积渲染图像进行的定量分析显示,正弦波的体积减小,正弦波网络的连通性降低。我们的研究结果表明,使用同步辐射微型计算机断层扫描可以通过检测肝正弦曲线及其在受损肝脏三维结构中的变化来增进我们对肝病发病机制的了解。

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